Touch screen controller and control method of driving device
A technology of a driving device and a control method, which is applied in the control starting method, aircraft transmission device, non-electric variable control and other directions, can solve the problems of inaccurate control of aircraft, weak GPS chip signal, aircraft collision accident, etc., and achieves convenient command input, Precise control signal, the effect of improving accuracy
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no. 1 example
[0041] see figure 1 In this embodiment, the touch screen controller 20 is set separately from the aircraft 10 , that is, the touch screen controller 20 is not installed on the aircraft 10 . Aircraft 10 is provided with controller 11, camera device 12, electronic compass 13, distance sensor 14 and GPS chip 15, and touch screen controller 20 is provided with processor 21, touch screen 22, broadcasting device 23, indicator light 24, vibration device 25 And gyro sensor 26.
[0042] The controller 11 of the aircraft 10 is used to output control signals to the power plant of the aircraft 10, such as outputting control signals to the motor, and the rotation of the motor is controlled to drive the movement of the rotor device or deflector, thereby realizing the take-off, descent, and deflection of the aircraft. Navigate, turn, etc. Moreover, the controller 11 receives the real-time images captured by the camera device 12 , and receives signals output by the electronic compass 13 , t...
no. 2 example
[0069] The structure of the aircraft of this embodiment is the same as the structure of the aircraft 10 of the first embodiment, and the structure of the touch screen controller is the same as that of the touch screen controller 20 of the first embodiment, the touch screen controller has a processor and a touch screen that communicate with each other. , and the processor can send a control signal to the controller of the aircraft, thereby controlling the movement of the aircraft.
[0070] see Figure 8 The touch screen 40 of this embodiment is provided with a control command input area 41, a real-time data display area 42, and a control command area 43. The difference from the first embodiment is that the control command input area 41 of this embodiment is a display area. It is not divided into horizontal motion command input area and vertical motion input area.
[0071] From Figure 8 It can be seen that the real-time data display area 42 and the control command input area ...
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